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Highly efficient preparation of single-stranded DNA rings by T4 ligase at abnormally low Mg(II) concentration

机译:在异常低的Mg(II)浓度下通过T4连接酶高效制备单链DNA环

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摘要

Preparation of large amount of single-stranded circular DNA in high selectivity is crucial for further developments of nanotechnology and other DNA sciences. Herein, a simple but practically useful methodology to prepare DNA rings has been presented. One of the essential factors is to use highly diluted T4 ligase buffer for ligase reactions. This strategy is based on our unexpected finding that, in diluted T4 buffers, intermolecular polymerization of DNA fragments is greatly suppressed with respect to their intramolecular cyclization. This promotion of cyclization is attributable to abnormally low concentration of Mg2+ ion (0.5–1.0 mM) but not ATP in the media for T4 ligase reactions. The second essential factor is to add DNA substrate intermittently to the mixture and maintain its temporal concentration low. By combining these two factors, single-stranded DNA rings of various sizes (31–74 nt) were obtained in high selectivity (89 mol% for 66-nt DNA) and in satisfactorily high productivity (∼0.2 mg/ml). A linear 72-nt DNA was converted to the corresponding DNA ring in nearly 100% selectivity. The superiority of this new method was further substantiated by the fact that small-sized DNA rings (31–42 nt), which were otherwise hardly obtainable, were successfully prepared in reasonable yields.
机译:以高选择性制备大量的单链环状DNA对于纳米技术和其他DNA科学的进一步发展至关重要。在本文中,已经提出了制备DNA环的简单但实际上有用的方法。必要因素之一是使用高度稀释的T4连接酶缓冲液进行连接酶反应。该策略基于我们的意外发现,即在稀释的T4缓冲液中,就其分子内环化而言,DNA片段的分子间聚合被大大抑制了。这种环化的促进是由于M4 2 + 离子浓度异常低(0.5–1.0 mM),而不是T4连接酶反应介质中的ATP。第二个重要因素是将DNA底物间歇地添加到混合物中,并保持其暂时浓度低。通过综合这两个因素,可以以高选择性(66-nt DNA为89 mol%)和令人满意的高生产率(〜0.2 mg / ml)获得各种大小(31-74 nt)的单链DNA环。线性的72-nt DNA以近100%的选择性转化为相应的DNA环。这种新方法的优越性进一步得到了证实,即以合理的产量成功制备了原本难以获得的小尺寸DNA环(31-42 nt)。

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